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<title>llvm-project.git/llvm/test/Transforms/LoopVectorize/no_array_bounds.ll, branch users/nico/python-2</title>
<subtitle>Unnamed repository; edit this file 'description' to name the repository.
</subtitle>
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<entry>
<title>[LoopVectorize] Convert some tests to opaque pointers (NFC)</title>
<updated>2022-12-14T14:16:59+00:00</updated>
<author>
<name>Nikita Popov</name>
<email>npopov@redhat.com</email>
</author>
<published>2022-12-14T14:15:18+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=7d7577256b76e4293f455b8093504d5f7044ab4b'/>
<id>7d7577256b76e4293f455b8093504d5f7044ab4b</id>
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<pre>
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</entry>
<entry>
<title>[NFC] Port all runlines for LoopVectorize pass tests to -passes syntax</title>
<updated>2022-12-05T19:17:30+00:00</updated>
<author>
<name>Roman Lebedev</name>
<email>lebedev.ri@gmail.com</email>
</author>
<published>2022-12-05T18:44:25+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=be51fa4580b3274d35cc77bedb238a9ad5fb04bc'/>
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<pre>
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</entry>
<entry>
<title>Revert "[NFCI] Regenerate SROA/LoopVectorize test checks"</title>
<updated>2022-04-03T23:15:30+00:00</updated>
<author>
<name>Dávid Bolvanský</name>
<email>david.bolvansky@gmail.com</email>
</author>
<published>2022-04-03T23:14:34+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=872f7000fc6a2945c715dd701984560b0a98105c'/>
<id>872f7000fc6a2945c715dd701984560b0a98105c</id>
<content type='text'>
This reverts commit 14e3450fb57305aa9ff3e9e60687b458e43835c9.
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<pre>
This reverts commit 14e3450fb57305aa9ff3e9e60687b458e43835c9.
</pre>
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</content>
</entry>
<entry>
<title>[NFCI] Regenerate LoopVectorize test checks</title>
<updated>2022-04-03T19:56:24+00:00</updated>
<author>
<name>Dávid Bolvanský</name>
<email>david.bolvansky@gmail.com</email>
</author>
<published>2022-04-03T19:55:58+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=a113a582b1a2c04f5df89db50e446074f74559b0'/>
<id>a113a582b1a2c04f5df89db50e446074f74559b0</id>
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<pre>
</pre>
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</content>
</entry>
<entry>
<title>Revert "Temporarily Revert "Add basic loop fusion pass.""</title>
<updated>2019-04-17T04:52:47+00:00</updated>
<author>
<name>Eric Christopher</name>
<email>echristo@gmail.com</email>
</author>
<published>2019-04-17T04:52:47+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=cee313d288a4faf0355d76fb6e0e927e211d08a5'/>
<id>cee313d288a4faf0355d76fb6e0e927e211d08a5</id>
<content type='text'>
The reversion apparently deleted the test/Transforms directory.

Will be re-reverting again.

llvm-svn: 358552
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<pre>
The reversion apparently deleted the test/Transforms directory.

Will be re-reverting again.

llvm-svn: 358552
</pre>
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</content>
</entry>
<entry>
<title>Temporarily Revert "Add basic loop fusion pass."</title>
<updated>2019-04-17T02:12:23+00:00</updated>
<author>
<name>Eric Christopher</name>
<email>echristo@gmail.com</email>
</author>
<published>2019-04-17T02:12:23+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=a86343512845c9c1fdbac865fea88aa5fce7142a'/>
<id>a86343512845c9c1fdbac865fea88aa5fce7142a</id>
<content type='text'>
As it's causing some bot failures (and per request from kbarton).

This reverts commit r358543/ab70da07286e618016e78247e4a24fcb84077fda.

llvm-svn: 358546
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<pre>
As it's causing some bot failures (and per request from kbarton).

This reverts commit r358543/ab70da07286e618016e78247e4a24fcb84077fda.

llvm-svn: 358546
</pre>
</div>
</content>
</entry>
<entry>
<title>[Unroll/UnrollAndJam/Vectorizer/Distribute] Add followup loop attributes.</title>
<updated>2018-12-12T17:32:52+00:00</updated>
<author>
<name>Michael Kruse</name>
<email>llvm@meinersbur.de</email>
</author>
<published>2018-12-12T17:32:52+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=7244852557ca694f688bc1fd82f870a9e8c84c32'/>
<id>7244852557ca694f688bc1fd82f870a9e8c84c32</id>
<content type='text'>
When multiple loop transformation are defined in a loop's metadata, their order of execution is defined by the order of their respective passes in the pass pipeline. For instance, e.g.

    #pragma clang loop unroll_and_jam(enable)
    #pragma clang loop distribute(enable)

is the same as

    #pragma clang loop distribute(enable)
    #pragma clang loop unroll_and_jam(enable)

and will try to loop-distribute before Unroll-And-Jam because the LoopDistribute pass is scheduled after UnrollAndJam pass. UnrollAndJamPass only supports one inner loop, i.e. it will necessarily fail after loop distribution. It is not possible to specify another execution order. Also,t the order of passes in the pipeline is subject to change between versions of LLVM, optimization options and which pass manager is used.

This patch adds 'followup' attributes to various loop transformation passes. These attributes define which attributes the resulting loop of a transformation should have. For instance,

    !0 = !{!0, !1, !2}
    !1 = !{!"llvm.loop.unroll_and_jam.enable"}
    !2 = !{!"llvm.loop.unroll_and_jam.followup_inner", !3}
    !3 = !{!"llvm.loop.distribute.enable"}

defines a loop ID (!0) to be unrolled-and-jammed (!1) and then the attribute !3 to be added to the jammed inner loop, which contains the instruction to distribute the inner loop.

Currently, in both pass managers, pass execution is in a fixed order and UnrollAndJamPass will not execute again after LoopDistribute. We hope to fix this in the future by allowing pass managers to run passes until a fixpoint is reached, use Polly to perform these transformations, or add a loop transformation pass which takes the order issue into account.

For mandatory/forced transformations (e.g. by having been declared by #pragma omp simd), the user must be notified when a transformation could not be performed. It is not possible that the responsible pass emits such a warning because the transformation might be 'hidden' in a followup attribute when it is executed, or it is not present in the pipeline at all. For this reason, this patche introduces a WarnMissedTransformations pass, to warn about orphaned transformations.

Since this changes the user-visible diagnostic message when a transformation is applied, two test cases in the clang repository need to be updated.

To ensure that no other transformation is executed before the intended one, the attribute `llvm.loop.disable_nonforced` can be added which should disable transformation heuristics before the intended transformation is applied. E.g. it would be surprising if a loop is distributed before a #pragma unroll_and_jam is applied.

With more supported code transformations (loop fusion, interchange, stripmining, offloading, etc.), transformations can be used as building blocks for more complex transformations (e.g. stripmining+stripmining+interchange -&gt; tiling).

Reviewed By: hfinkel, dmgreen

Differential Revision: https://reviews.llvm.org/D49281
Differential Revision: https://reviews.llvm.org/D55288

llvm-svn: 348944
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
When multiple loop transformation are defined in a loop's metadata, their order of execution is defined by the order of their respective passes in the pass pipeline. For instance, e.g.

    #pragma clang loop unroll_and_jam(enable)
    #pragma clang loop distribute(enable)

is the same as

    #pragma clang loop distribute(enable)
    #pragma clang loop unroll_and_jam(enable)

and will try to loop-distribute before Unroll-And-Jam because the LoopDistribute pass is scheduled after UnrollAndJam pass. UnrollAndJamPass only supports one inner loop, i.e. it will necessarily fail after loop distribution. It is not possible to specify another execution order. Also,t the order of passes in the pipeline is subject to change between versions of LLVM, optimization options and which pass manager is used.

This patch adds 'followup' attributes to various loop transformation passes. These attributes define which attributes the resulting loop of a transformation should have. For instance,

    !0 = !{!0, !1, !2}
    !1 = !{!"llvm.loop.unroll_and_jam.enable"}
    !2 = !{!"llvm.loop.unroll_and_jam.followup_inner", !3}
    !3 = !{!"llvm.loop.distribute.enable"}

defines a loop ID (!0) to be unrolled-and-jammed (!1) and then the attribute !3 to be added to the jammed inner loop, which contains the instruction to distribute the inner loop.

Currently, in both pass managers, pass execution is in a fixed order and UnrollAndJamPass will not execute again after LoopDistribute. We hope to fix this in the future by allowing pass managers to run passes until a fixpoint is reached, use Polly to perform these transformations, or add a loop transformation pass which takes the order issue into account.

For mandatory/forced transformations (e.g. by having been declared by #pragma omp simd), the user must be notified when a transformation could not be performed. It is not possible that the responsible pass emits such a warning because the transformation might be 'hidden' in a followup attribute when it is executed, or it is not present in the pipeline at all. For this reason, this patche introduces a WarnMissedTransformations pass, to warn about orphaned transformations.

Since this changes the user-visible diagnostic message when a transformation is applied, two test cases in the clang repository need to be updated.

To ensure that no other transformation is executed before the intended one, the attribute `llvm.loop.disable_nonforced` can be added which should disable transformation heuristics before the intended transformation is applied. E.g. it would be surprising if a loop is distributed before a #pragma unroll_and_jam is applied.

With more supported code transformations (loop fusion, interchange, stripmining, offloading, etc.), transformations can be used as building blocks for more complex transformations (e.g. stripmining+stripmining+interchange -&gt; tiling).

Reviewed By: hfinkel, dmgreen

Differential Revision: https://reviews.llvm.org/D49281
Differential Revision: https://reviews.llvm.org/D55288

llvm-svn: 348944
</pre>
</div>
</content>
</entry>
<entry>
<title>[DebugInfo] Add DILabel metadata and intrinsic llvm.dbg.label.</title>
<updated>2018-05-09T02:40:45+00:00</updated>
<author>
<name>Shiva Chen</name>
<email>shiva0217@gmail.com</email>
</author>
<published>2018-05-09T02:40:45+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=2c864551df3945f50e1780b2f2c880ec358ae715'/>
<id>2c864551df3945f50e1780b2f2c880ec358ae715</id>
<content type='text'>
In order to set breakpoints on labels and list source code around
labels, we need collect debug information for labels, i.e., label
name, the function label belong, line number in the file, and the
address label located. In order to keep these information in LLVM
IR and to allow backend to generate debug information correctly.
We create a new kind of metadata for labels, DILabel. The format
of DILabel is

!DILabel(scope: !1, name: "foo", file: !2, line: 3)

We hope to keep debug information as much as possible even the
code is optimized. So, we create a new kind of intrinsic for label
metadata to avoid the metadata is eliminated with basic block.
The intrinsic will keep existing if we keep it from optimized out.
The format of the intrinsic is

llvm.dbg.label(metadata !1)

It has only one argument, that is the DILabel metadata. The
intrinsic will follow the label immediately. Backend could get the
label metadata through the intrinsic's parameter.

We also create DIBuilder API for labels to be used by Frontend.
Frontend could use createLabel() to allocate DILabel objects, and use
insertLabel() to insert llvm.dbg.label intrinsic in LLVM IR.

Differential Revision: https://reviews.llvm.org/D45024

Patch by Hsiangkai Wang.

llvm-svn: 331841
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
In order to set breakpoints on labels and list source code around
labels, we need collect debug information for labels, i.e., label
name, the function label belong, line number in the file, and the
address label located. In order to keep these information in LLVM
IR and to allow backend to generate debug information correctly.
We create a new kind of metadata for labels, DILabel. The format
of DILabel is

!DILabel(scope: !1, name: "foo", file: !2, line: 3)

We hope to keep debug information as much as possible even the
code is optimized. So, we create a new kind of intrinsic for label
metadata to avoid the metadata is eliminated with basic block.
The intrinsic will keep existing if we keep it from optimized out.
The format of the intrinsic is

llvm.dbg.label(metadata !1)

It has only one argument, that is the DILabel metadata. The
intrinsic will follow the label immediately. Backend could get the
label metadata through the intrinsic's parameter.

We also create DIBuilder API for labels to be used by Frontend.
Frontend could use createLabel() to allocate DILabel objects, and use
insertLabel() to insert llvm.dbg.label intrinsic in LLVM IR.

Differential Revision: https://reviews.llvm.org/D45024

Patch by Hsiangkai Wang.

llvm-svn: 331841
</pre>
</div>
</content>
</entry>
<entry>
<title>[PR27284] Reverse the ownership between DICompileUnit and DISubprogram.</title>
<updated>2016-04-15T15:57:41+00:00</updated>
<author>
<name>Adrian Prantl</name>
<email>aprantl@apple.com</email>
</author>
<published>2016-04-15T15:57:41+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=75819aedf6d774a424e35793b266442708e57050'/>
<id>75819aedf6d774a424e35793b266442708e57050</id>
<content type='text'>
Currently each Function points to a DISubprogram and DISubprogram has a
scope field. For member functions the scope is a DICompositeType. DIScopes
point to the DICompileUnit to facilitate type uniquing.

Distinct DISubprograms (with isDefinition: true) are not part of the type
hierarchy and cannot be uniqued. This change removes the subprograms
list from DICompileUnit and instead adds a pointer to the owning compile
unit to distinct DISubprograms. This would make it easy for ThinLTO to
strip unneeded DISubprograms and their transitively referenced debug info.

Motivation
----------

Materializing DISubprograms is currently the most expensive operation when
doing a ThinLTO build of clang.

We want the DISubprogram to be stored in a separate Bitcode block (or the
same block as the function body) so we can avoid having to expensively
deserialize all DISubprograms together with the global metadata. If a
function has been inlined into another subprogram we need to store a
reference the block containing the inlined subprogram.

Attached to https://llvm.org/bugs/show_bug.cgi?id=27284 is a python script
that updates LLVM IR testcases to the new format.

http://reviews.llvm.org/D19034
&lt;rdar://problem/25256815&gt;

llvm-svn: 266446
</content>
<content type='xhtml'>
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<pre>
Currently each Function points to a DISubprogram and DISubprogram has a
scope field. For member functions the scope is a DICompositeType. DIScopes
point to the DICompileUnit to facilitate type uniquing.

Distinct DISubprograms (with isDefinition: true) are not part of the type
hierarchy and cannot be uniqued. This change removes the subprograms
list from DICompileUnit and instead adds a pointer to the owning compile
unit to distinct DISubprograms. This would make it easy for ThinLTO to
strip unneeded DISubprograms and their transitively referenced debug info.

Motivation
----------

Materializing DISubprograms is currently the most expensive operation when
doing a ThinLTO build of clang.

We want the DISubprogram to be stored in a separate Bitcode block (or the
same block as the function body) so we can avoid having to expensively
deserialize all DISubprograms together with the global metadata. If a
function has been inlined into another subprogram we need to store a
reference the block containing the inlined subprogram.

Attached to https://llvm.org/bugs/show_bug.cgi?id=27284 is a python script
that updates LLVM IR testcases to the new format.

http://reviews.llvm.org/D19034
&lt;rdar://problem/25256815&gt;

llvm-svn: 266446
</pre>
</div>
</content>
</entry>
<entry>
<title>testcase gardening: update the emissionKind enum to the new syntax. (NFC)</title>
<updated>2016-04-01T00:16:49+00:00</updated>
<author>
<name>Adrian Prantl</name>
<email>aprantl@apple.com</email>
</author>
<published>2016-04-01T00:16:49+00:00</published>
<link rel='alternate' type='text/html' href='https://git.belthelziquor.com/llvm-project.git/commit/?id=b8089516a5e5eae6aff3bdaef426cccd6355c0c5'/>
<id>b8089516a5e5eae6aff3bdaef426cccd6355c0c5</id>
<content type='text'>
llvm-svn: 265081
</content>
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<pre>
llvm-svn: 265081
</pre>
</div>
</content>
</entry>
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